4.8 Article

Renyi Entropies from Random Quenches in Atomic Hubbard and Spin Models

Journal

PHYSICAL REVIEW LETTERS
Volume 120, Issue 5, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevLett.120.050406

Keywords

-

Funding

  1. ERC Synergy Grant UQUAM
  2. SFB FoQuS (FWF) [F4016-N23]
  3. ERC grant QUENOCOBA

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We present a scheme for measuring Renyi entropies in generic atomic Hubbard and spin models using single copies of a quantum state and for partitions in arbitrary spatial dimensions. Our approach is based on the generation of random unitaries from random quenches, implemented using engineered time-dependent disorder potentials, and standard projective measurements, as realized by quantum gas microscopes. By analyzing the properties of the generated unitaries and the role of statistical errors, with respect to the size of the partition, we show that the protocol can be realized in existing quantum simulators and used to measure, for instance, area law scaling of entanglement in two-dimensional spin models or the entanglement growth in many-body localized systems.

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